代丽萍,女,博士,副研究员。主要从事水稻重要农艺性状基因和耐干旱的分子机理研究。
教育经历
2015.09-2020.06 华中农业大学,植物科学技术学院,作物遗传育种,博士
2012.09-2015.06 中国农业科学院,水稻研究所,作物遗传育种,硕士
2008.09-2012.06 云南农业大学,农学与生物技术学院,生物技术,本科
工作经历
2023.11至今 浙江农林大学现代农学院,副研究员
2020.07-2023.10 中国农业科学院水稻研究所,博士后
科研项目
1. 水稻抗旱相关基因的克隆和功能研究,浙江农林大学科研发展基金,2024FLR002,2024.01–2026.12,10万元,主持
2. 耐干旱水稻种质挖掘及创制,海南省崖州湾种子实验室,B21HJ0206,2021.01-2027.01,1400万元,参与。
3. 水稻分蘖基因DLT5的功能分析,中国博士后科学基金会,2020M680778,2020.11-2023.07,8万元,结题,主持
4. 水稻高光效基因HP9的克隆及育种利用,国家自然科学基金委员会,面上项目,31971872, 2020.01.01-2023.12.31, 58万元, 参与
5. 水稻黄绿叶突变体ty7的克隆和功能分析, 国家自然科学基金委员会,青年科学基金项目,31801333, 2019.01.01-2021.12.31, 25万元, 参与
获批专利
1. 代丽萍,曾大力,钱前,胡江,张光恒,朱丽,董国军,郭龙彪,高振宇,陈光。稻米直链淀粉含量微控基因AGPL1 的分子标记及应用。专利号:ZL201610391525.1
2. 曾大力,钱前,李家洋,代丽萍,郭龙彪,张光恒,朱丽,胡江,董国军,任德勇,高振宇,陈光。抗水稻白背飞虱基因 WBPH2 的分子标记及应用。专利号:ZL201710158024.3
3. 曾大力,钱前,李家洋,朱丽,代丽萍,胡江,张光恒,郭龙彪,董国军,高振宇,陈光。稻米直链淀粉含量微控基因 ISA 的分子标记及应用。专利号:ZL201610389803.X
学术论文
1. Huang LC#, Dai LP#, Wang L, Leng YJ, Yang YL, Xu J, Hu J, Rao YC, Zhang GH, Zhu L, Dong GJ, Guo LB, Qian Q*, Zeng DL*. Genetic dissection for chlorophyll content of the top three leaves during grain filling in rice (Oryza sativa L.). J. Plant Growth Regul., 2015, 34 (2): 381-391
2. Dai LP#, Wang L#, Leng YJ, Yang YL, Huang LC, Chen L, Wang YQ, Ren DY, Hu J, Zhang GH, Zhu L, Guo LB, Qian Q*, Zeng DL*. Quantitative trait loci mapping for appearance quality in short-grain rice. Crop Sci., 2016, 56 (4): 1-9
3. Dai LP#, Lu XL#, Zou WW, Wang CJ, Shen L, Hu J, Zhang GH, Ren DY, Chen G, Zhang Q, Xue DW, Dong GJ, Gao ZY, Guo LB, Zhu L, Mou TM, Qian Q*, Zeng DL*. Mapping of QTLs for source and sink associated traits under elevated CO2 in rice (Oryza sativa L.). Plant Growth Regul., 2020, 90(2): 359-367
4. Dai LP#, Li PY#, Li Q, Leng YJ*, Zeng DL, Qian Q*. Integrated multi-omics perspective to strengthen the understanding of salt tolerance in rice. Int. J. Mol. Sci., 2022, 23(9):5239
5. Dai LP#, Lu XL#, Shen L, Guo LB, Zhang GH, Gao ZY, Zhu L, Hu J, Dong GJ, Ren DY, Zhang Q, Zeng DL*, Qian Q*, Li Q*. Genome-wide association study reveals novel QTLs and candidate genes for seed vigor in rice. Front. Plant Sci., 2022, 13:1005203
8. Yang YL#, Xu J#, Huang LC, Leng YJ, Dai LP, Rao YC, Chen L, Wang YQ, Tu ZJ, Hu J, Ren DY, Zhang GH, Zhu L, Guo LB, Qian Q*, Zeng DL*. PGL, encoding chlorophyllide a oxygenase 1, impacts leaf senescence and indirectly affects grain yield and quality in rice. J. Exp. Bot., 2016, 67(5):1297-1310
9. Leng YJ#, Yang YL#, Ren DY#, Huang LC, Dai LP, Wang YQ, Chen L, Tu ZJ, Gao YH, Li XY, Zhu L, Hu J, Zhang GH, Gao ZY, Guo LB, Kong ZS, Lin YJ, Qian Q*, Zeng DL*. A rice PECTATE LYASE-LIKE gene is required for plant growth and leaf senescence. Plant Physiol., 2017, 174(2):1151-1166
13. Huang LC#, Chen L#, Wang L, Yang YL, Rao YC, Ren DY, Dai LP, Gao YH, Zou WW, Lu XL, Zhang GH, Zhu L, Hu Jiang, Chen G, Shen L, Dong GJ, Gao ZY, Guo LB, Qian Q*, Zeng DL*. A Nck-associated protein 1-like protein affects drought sensitivity by its involvement in leaf epidermal development and stomatal closure in rice. Plant J., 2019, 98(5):884-897
14. Chen L#, Huang LC#, Dai LP, Gao YH, Zou WW, Lu XL, Wang CJ, Zhang GH, Ren DY, Hu J, Shen L, Dong GJ, Gao ZY, Chen G, Xue DW, Guo LB, Xing YZ, Qian Q*, Zhu L*, Zeng DL*. PALE-GREEN LEAF12 encodes a novel pentatricopeptide repeat protein required for chloroplast development and 16S rRNA processing in rice. Plant Cell Physiol., 2019, 60(3):587-598
15. Leng YJ#, Gao YH#, Chen L#, Yang YL, Huang LC, Dai LP, Ren DY, Xu QK, Zhang Y, Ponce K, Hu J, Shen L, Zhang GH, Chen G, Dong GJ, Gao ZY, Guo LB, Ye GY, Qian Q*, Zhu L*, Zeng DL*. Using Heading date 1 preponderant alleles from indica cultivars to breed high-yield, high-quality japonica rice varieties for cultivation in south China. Plant Biotechnol. J., 2020, 18(1):119-128
16. Chen Y#, Zhong D#, Yang X, Zhao YH, Dai LP, Zeng DL, Wang Q, Gao L*, Li SB*. ZmFdC2 Encoding a Ferredoxin Protein With C-Terminus Extension Is Indispensable for Maize Growth. Front Plant Sci., 2021, 12:646359
17. Li Q#, Lu XL#, Wang CJ, Shen L, Dai LP, He JL, Yang L, Li PY, Hong YF, Zhang Q, Dong GJ, Hu J, Zhang GH, Ren DY, Gao ZY, Guo LB, Qian Q*, Zhu L*, Zeng DL*. Genome-wide association study and transcriptome analysis reveal new QTL and candidate genes for nitrogen-deficiency tolerance in rice. Crop J., 2022, 10(4):942-951
18. Li PY#, Li Q#, Lu XL; Dai LP, Yang L, Hong YF, Yan TC, Shen L, Zhang Q, Ren DY, Zhu L, Hu J, Dong GJ, Zhang GH, Qian Q*, Zeng DL*. Genome-wide association study reveals novel QTLs and candidate genes for grain number in rice. Int. J. Mol. Sci., 2022, 23(21):13617
联系方式
dailiping@zafu.edu.cn